The TSV622, TSV623, TSV624 and TSV625 dual
and quad operational amplifiers offer low voltage,
low power operation and rail-to-rail input and
output.
The TSV62x series features an excellent
speed/power consumption ratio, offering a
420 kHz gain bandwidth product while consuming
only 29 µA at a 5 V supply voltage. These opamps are unity gain stable for capacitive loads up
to 100 pF. They also feature an ultra-low input
bias current and low input offset voltage.
TSSOP-14
TSSOP-16
TSV623 (dual) and TSV625 (quad) have two
shutdown pins in order to reduce power
consumption.
These features make the TSV62x family ideal for
sensor interfaces, battery-supplied and portable
applications, as well as active filtering.
Figure 1.Pin connections for each package (top view)
Out1
Out1
Out1
Out1
In1-
In1-
In1+
In1+
V
V
CC-
CC-
1
1
_
In1-
1
1
_
_
2
2
+
+
3
3
4
4
8
8
V
V
CC+
CC+
7
7
Out2
Out2
_
_
+
+
In2-
In2-
6
6
In2+
In2+
5
5
In1-
In1+
In1+
V
V
CC-
CC-
SHDN1
SHDN1SHDN1
_
2
2
+
+
3
3
4
4
56
56
10
10
V
V
CC+
CC+
9
9
Out2
Out2
_
_
+
+
8
8
7
7
In2-
In2-
In2+
In2+
SHDN2
SHDN2
SHDN2
TSV622IDT/IST/ILT
SO8/Mini-SO8/SOT23-8
1
1
Out1
Out1
_
_
2
2
In1-
In1-
+
In1+
In1+
V
V
CC+
CC+
In2+
In2+
In2-
In2-
Out2
Out2
+
3
3
4
4
5
5
+
+
_
_
6
6
7
7
TSV624IPT
TSSOP14
TSV623IST
MiniSO-10
1
Out4
Out4
14
14
_
_
13
13
In4-
In4-
+
+
In4+
In4+
12
12
V
V
11
11
CC-
CC-
10
10
In3+
In3+
+
+
_
_
In3-
In3-
9
9
Out3
Out3
8
8
Out1
In1-
In1+
V
CC+
In2+
In2-
Out2
SHDN1/2
SHDN1/2
_
2
+
3
5
+
_
6
710
89
_
+
Out4
16
15
In4-
In4+
14
V
134
CC-
12
In3+
+
_
In3-
11
Out3
SHDN3/4SHDN3/4
TSV625IPT
TSSOP16
Doc ID 15689 Rev 43/25
Absolute maximum ratings and operating conditionsTSV62x, TSV62xA
2 Absolute maximum ratings and operating conditions
Table 2.Absolute maximum ratings (AMR)
SymbolParameterValueUnit
(3)
(4)
(1)
(3)
(8)
(2)
(7)
(9)
(5)(6)
V
V
CC-
CC-
6V
±V
CC
- 0.2 to V
+ 0.2V
CC+
V
10mA
- 0.2 to V
+ 0.2V
CC+
105
190
125
°C/W
113
100
95
4kV
200V
1.5kV
V
CC
V
V
I
in
Supply voltage
Differential input voltage
id
Input voltage
in
Input current
SHDNShutdown voltage
T
stg
Storage temperature-65 to +150°C
Thermal resistance junction to ambient
SOT23-8
MiniSO-8
R
thja
SO-8
Mini-SO10
TSSOP14
TSSOP16
T
Maximum junction temperature150°C
j
HBM: human body model
ESD
MM: machine model
CDM: charged device model
Latch-up immunity200mA
1. All voltage values, except differential voltages are with respect to network ground terminal.
2. Differential voltages are the non-inverting input terminal with respect to the inverting input terminal.
3. VCC-Vin must not exceed 6 V, Vin must not exceed 6V.
4. Input current must be limited by a resistor in series with the inputs.
5. Short-circuits can cause excessive heating and destructive dissipation.
6. Rth are typical values.
7. Human body model: 100 pF discharged through a 1.5 kΩ resistor between two pins of the device, done for
all couples of pin combinations with other pins floating.
8. Machine model: a 200 pF capacitor is charged to the specified voltage, then discharged directly between
two pins of the device with no external series resistor (internal resistor < 5 Ω), done for all couples of pin
combinations with other pins floating.
9. Charged device model: all pins plus package are charged together to the specified voltage and then
discharged directly to ground.
Table 3.Operating conditions
SymbolParameterValueUnit
T
V
V
CC
icm
oper
Supply voltage1.5 to 5.5V
Common mode input voltage rangeV
- 0.1 to V
CC-
+ 0.1V
CC+
Operating free air temperature range-40 to +125°C
4/25Doc ID 15689 Rev 4
TSV62x, TSV62xAElectrical characteristics
3 Electrical characteristics
Table 4.Electrical characteristics at V
SymbolParameterConditionsMin.Typ.Max.Unit
DC performance
V
io
DV
io
I
io
I
ib
CMR
A
vd
V
OH
V
OL
I
out
I
CC
AC performance
GBPGain bandwidth product R
F
u
φmPhase marginR
G
m
SRSlew rateR
1. Guaranteed by design.
and R
connected to VCC/2 (unless otherwise specified)
L
TSV62x
TSV62xA
TSV623AIST - MiniSO10
= +1.8 V with V
CC+
= 0 V, V
CC-
= VCC/2, T
icm
amb
4
0.8
1
= 25° C,
mV
Offset voltage
TSV62x -T
TSV62xA - T
< Top < T
min
min
TSV623AIST - T
max
< Top < T
< Top < T
min
max
max
6
2
2.2
Input offset voltage drift2μV/°C
Input offset current
(V
out=VCC
/2)
Input bias current
(V
out=VCC
/2)
Common mode rejection
ratio 20 log (ΔV
/ΔVio)
ic
Large signal voltage gain
High level output voltage
Low level output voltage
Isink
Isource
Supply current (per operator)
110
T
< Top < T
min
max
1100 pA
110
< Top < T
T
min
0 V to 1.8 V, V
< Top < T
T
min
R
= 10 kΩ, V
L
T
< Top < T
min
R
=10kΩ
L
T
< Top < T
min
R
=10kΩ
L
T
< Top < T
min
V
= 1.8 V612
out
< Top < T
T
min
V
= 0 V610
out
< Top < T
T
min
No load, V
T
< Top < T
min
=10kΩ, CL= 100 pF, f = 100 kHz275340kHz
L
max
= 0.9 V5374dB
out
max
= 0.5 V to 1.3 V7895dB
out
max
51dB
73dB
35
max
max
max
max
out=VCC
max
/22531µA
50
4
4
1100 pA
5
435
(1)
(1)
50
33µA
pA
pA
mV
mV
mA
Unity gain frequencyRL=10kΩ, CL= 100 pF,280kHz
=10kΩ, CL= 100 pF41Degrees
L
Gain margin RL=10kΩ, CL= 100 pF8dB
=10kΩ, CL= 100 pF, Av=10.10.155V/μs
L
Doc ID 15689 Rev 45/25
Electrical characteristicsTSV62x, TSV62xA
Table 5.Shutdown characteristics VCC= 1.8 V (TSV623, TSV625)
SymbolParameterConditionsMin.Typ.Max.Unit
DC performance
I
CC
t
on
t
off
V
V
I
IH
I
IL
I
OLeak
= V
SHDN
Supply current in shutdown
mode (all operators)